Search: (WFRF:(Sandvik Sylvi Marlen)) >
Local temperatures ...
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Lenoir, Jonathan
(author)
Local temperatures inferred from plant communities suggest strong spatial buffering of climate warming across Northern Europe
- Article/chapterEnglish2013
Publisher, publication year, extent ...
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2013-02-11
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Wiley,2013
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printrdacarrier
Numbers
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LIBRIS-ID:oai:DiVA.org:su-89855
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https://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-89855URI
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https://doi.org/10.1111/gcb.12129DOI
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https://res.slu.se/id/publ/50599URI
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https://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-70335URI
Supplementary language notes
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Language:English
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Summary in:English
Part of subdatabase
Classification
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Subject category:ref swepub-contenttype
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Subject category:art swepub-publicationtype
Notes
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AuthorCount:35;
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Recent studies from mountainous areas of small spatial extent (<2500km2) suggest that fine-grained thermal variability over tens or hundreds of metres exceeds much of the climate warming expected for the coming decades. Such variability in temperature provides buffering to mitigate climate-change impacts. Is this local spatial buffering restricted to topographically complex terrains? To answer this, we here study fine-grained thermal variability across a 2500-km wide latitudinal gradient in Northern Europe encompassing a large array of topographic complexities. We first combined plant community data, Ellenberg temperature indicator values, locally measured temperatures (LmT) and globally interpolated temperatures (GiT) in a modelling framework to infer biologically relevant temperature conditions from plant assemblages within <1000-m2 units (community-inferred temperatures: CiT). We then assessed: (1) CiT range (thermal variability) within 1-km2 units; (2) the relationship between CiT range and topographically and geographically derived predictors at 1-km resolution; and (3) whether spatial turnover in CiT is greater than spatial turnover in GiT within 100-km2 units. Ellenberg temperature indicator values in combination with plant assemblages explained 4672% of variation in LmT and 9296% of variation in GiT during the growing season (June, July, August). Growing-season CiT range within 1-km2 units peaked at 6065 degrees N and increased with terrain roughness, averaging 1.97 degrees C (SD=0.84 degrees C) and 2.68 degrees C (SD=1.26 degrees C) within the flattest and roughest units respectively. Complex interactions between topography-related variables and latitude explained 35% of variation in growing-season CiT range when accounting for sampling effort and residual spatial autocorrelation. Spatial turnover in growing-season CiT within 100-km2 units was, on average, 1.8 times greater (0.32 degrees Ckm1) than spatial turnover in growing-season GiT (0.18 degrees Ckm1). We conclude that thermal variability within 1-km2 units strongly increases local spatial buffering of future climate warming across Northern Europe, even in the flattest terrains.
Subject headings and genre
Added entries (persons, corporate bodies, meetings, titles ...)
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Graae, Bente Jessen
(author)
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Aarrestad, Per Arild
(author)
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Alsos, Inger Greve
(author)
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Armbruster, W. Scott
(author)
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Austrheim, Gunnar
(author)
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Bergendorff, Claes
(author)
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Birks, H. John B.
(author)
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Brathen, Kari Anne
(author)
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Brunet, JörgSwedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Institutionen för sydsvensk skogsvetenskap,Southern Swedish Forest Research Centre(Swepub:slu)46769
(author)
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Bruun, Hans Henrik
(author)
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Dahlberg, Carl JohanStockholms universitet,Botaniska institutionen(Swepub:su)joda1083
(author)
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Decocq, Guillaume
(author)
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Diekmann, Martin
(author)
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Dynesius, MatsUmeå universitet,Institutionen för ekologi, miljö och geovetenskap,Arcum(Swepub:umu)mady0001
(author)
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Ejrnaes, Rasmus
(author)
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Grytnes, John-Arvid
(author)
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Hylander, KristofferStockholms universitet,Botaniska institutionen(Swepub:su)khyla
(author)
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Klanderud, Kari
(author)
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Luoto, Miska
(author)
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Milbau, AnnUmeå universitet,Institutionen för ekologi, miljö och geovetenskap,Climate Impacts Research Centre (CIRC) ; Arcum(Swepub:umu)anmi0008
(author)
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Moora, Mari
(author)
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Nygaard, Bettina
(author)
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Odland, Arvid
(author)
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Ravolainen, Virve Tuulia
(author)
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Reinhardt, Stefanie
(author)
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Sandvik, Sylvi Marlen
(author)
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Schei, Fride Hoistad
(author)
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Speed, James David Mervyn
(author)
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Tveraabak, Liv Unn
(author)
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Vandvik, Vigdis
(author)
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Velle, Liv Guri
(author)
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Virtanen, Risto
(author)
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Zobel, Martin
(author)
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Svenning, Jens-Christian
(author)
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Sveriges lantbruksuniversitetInstitutionen för sydsvensk skogsvetenskap
(creator_code:org_t)
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Sveriges lantbruksuniversitet
Related titles
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In:Global Change Biology: Wiley19:5, s. 1470-14811354-10131365-2486
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Lenoir, Jonathan
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Graae, Bente Jes ...
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Aarrestad, Per A ...
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Alsos, Inger Gre ...
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Armbruster, W. S ...
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Austrheim, Gunna ...
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Bergendorff, Cla ...
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Birks, H. John B ...
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Brathen, Kari An ...
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Brunet, Jörg
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Bruun, Hans Henr ...
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Dahlberg, Carl J ...
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Decocq, Guillaum ...
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Diekmann, Martin
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Dynesius, Mats
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Ejrnaes, Rasmus
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Grytnes, John-Ar ...
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Hylander, Kristo ...
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Klanderud, Kari
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Luoto, Miska
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Milbau, Ann
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Moora, Mari
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Nygaard, Bettina
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Odland, Arvid
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Ravolainen, Virv ...
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Reinhardt, Stefa ...
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Sandvik, Sylvi M ...
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Schei, Fride Hoi ...
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Speed, James Dav ...
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Tveraabak, Liv U ...
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Vandvik, Vigdis
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Velle, Liv Guri
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Virtanen, Risto
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Zobel, Martin
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Svenning, Jens-C ...
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- About the subject
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- NATURAL SCIENCES
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NATURAL SCIENCES
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and Biological Scien ...
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and Botany
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- NATURAL SCIENCES
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NATURAL SCIENCES
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and Earth and Relate ...
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and Climate Research
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- NATURAL SCIENCES
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NATURAL SCIENCES
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and Biological Scien ...
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and Ecology
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- NATURAL SCIENCES
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NATURAL SCIENCES
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Global Change Bi ...
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Stockholm University
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Swedish University of Agricultural Sciences
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Umeå University